监控量子设备中的传输和非互惠性:一个准确的研究
João Ferreira1, Tony Jin1,2, Jochen Mannhart3
1Department of Quantum Matter Physics, École de Physique University of Geneva, 1211 Geneva, Switzerland.
Physical review letters
|April 13, 2024
概括
持续监测铁离子系统,揭示了测量诱导的不弹性过程. 这些过程使非互惠电流和工作提取无反控制,提供了量子热力学的新途径.
科学领域:
- 量子热力学就是量子热力学.
- 凝聚物质物理学 凝聚物质物理学
- 开放的量子系统是开放的.
背景情况:
- 非相互作用的费米离子系统是量子力学的基础.
- 持续监控引入了独特的动态,并影响了系统行为.
- 偏差储库驱动量子系统中的粒子和能量流.
研究的目的:
- 在连续监测的费米离子系统中获得粒子和热流的精确公式.
- 调查监测系统电流强度对系统电流的作用.
- 探索测量诱导的工作提取和冷却机制.
主要方法:
- 通过对测量结果的平均值来推导粒子和热流的确切公式.
- 弹性和不弹性电流组件的分析.
- 将形式主义应用于特定的监测方案.
主要成果:
- 准确的粒子和热流的公式得出.
- 确定了竞争的弹性和不弹性电流组件,取决于监测强度 (γ).
- 监视器诱导的不弹性过程导致非互惠电流,并使工作提取无需主动反.
结论:
- 持续监控可以诱导非互惠电流,并促进工作提取.
- 这项研究为理解测量驱动的量子热力学提供了一个框架.
- 为特定的监测强度确定了最佳性能制度,超出了扰乱极限.
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